Phosphoproteomic screening identifies physiological substrates of the CDKL5 kinase

被引:52
|
作者
Munoz, Ivan M. [1 ]
Morgan, Michael E. [1 ]
Peltier, Julien [1 ,2 ]
Weiland, Florian [1 ]
Gregorczyk, Mateusz [1 ]
Brown, Fiona C. M. [1 ]
Macartney, Thomas [1 ]
Toth, Rachel [1 ]
Trost, Matthias [1 ,2 ]
Rouse, John [1 ]
机构
[1] Univ Dundee, Sch Life Sci, MRC Prot Phosphorylat & Ubiquitylat Unit, Dundee, Scotland
[2] Inst Cell & Mol Biosci, Fac Med Sci, Newcastle Upon Tyne, Tyne & Wear, England
来源
EMBO JOURNAL | 2018年 / 37卷 / 24期
基金
英国生物技术与生命科学研究理事会; 英国医学研究理事会;
关键词
CDKL5; disorder; centrosome; cilia; kinase; microtubule; MICROTUBULE-ASSOCIATED PROTEIN; INFANTILE SPASMS; CELL POLARITY; MUTATIONS; GENE; ENCEPHALOPATHY; NETWORKS; CEP131; FAMILY; CYCLE;
D O I
10.15252/embj.201899559
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mutations in the gene encoding the protein kinase CDKL5 cause a debilitating neurodevelopmental disease termed CDKL5 disorder. The impact of these mutations on CDKL5 function is poorly understood because the substrates and cellular processes controlled by CDKL5 are unclear. Here, we describe a quantitative phosphoproteomic screening which identified MAP1S, CEP131 and DLG5-regulators of microtubule and centrosome function-as cellular substrates of CDKL5. Antibodies against MAP1S phospho-Ser(900) and CEP131 phospho-Ser(35) confirmed CDKL5-dependent phosphorylation of these targets in human cells. The phospho-acceptor serine residues in MAP1S, CEP131 and DLG5 lie in the motif RPXSA, although CDKL5 can tolerate residues other than Ala immediately C-terminal to the phospho-acceptor serine. We provide insight into the control of CDKL5 activity and show that pathogenic mutations in CDKL5 cause a major reduction in CDKL5 activity in vitro and in cells. These data reveal the first cellular substrates of CDKL5, which may represent important biomarkers in the diagnosis and treatment of CDKL5 disorder, and illuminate the functions of this poorly characterized kinase.
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页数:19
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